首页> 外文期刊>Vision Research: An International Journal in Visual Science >A mouse M-opsin monochromat: retinal cone photoreceptors have increased M-opsin expression when S-opsin is knocked out.
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A mouse M-opsin monochromat: retinal cone photoreceptors have increased M-opsin expression when S-opsin is knocked out.

机译:小鼠M-视蛋白单色物:剔除S-视蛋白后,视网膜视锥细胞感光细胞的M-视蛋白表达增加。

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摘要

Mouse cone photoreceptors, like those of most mammals including humans, express cone opsins derived from two ancient families: S-opsin (gene Opn1sw) and M-opsin (gene Opn1mw). Most C57Bl/6 mouse cones co-express both opsins, but in dorso-ventral counter-gradients, with M-opsin dominant in the dorsal retina and S-opsin in the ventral retina, and S-opsin 4-fold greater overall. We created a mouse lacking S-opsin expression by the insertion of a Neomycin selection cassette between the third and fourth exons of the Opn1sw gene (Opn1sw(Neo/Neo)). In strong contrast to published results characterizing mice lacking rhodopsin (Rho/) in which retinal rods undergo cell death by 2.5 months, cones of the Opn1sw(Neo/Neo) mouse remain viable for at least 1.5 yrs, even though many ventral cones do not form outer segments, as revealed by high resolution immunohistochemistry and electron microscopy. Suction pipette recordings revealed that functional ventral cones of the Opn1sw(Neo/Neo) mouse not only phototransduce light with normal kinetics, but are more sensitive to mid-wavelength light than their WT counterparts. Quantitative Western blot analysis revealed the basis of the heightened sensitivity to be increased M-opsin expression. Because S- and M-opsin transcripts must compete for the same translational machinery in cones where they are co-expressed, elimination of S-opsin mRNA in ventral Opn1sw(Neo/Neo) cones likely increases M-opsin expression by relieving competition for translational machinery, revealing an important consequence of eliminating a dominant transcript. Overall, our results reveal a striking capacity for cone photoreceptors to function with much reduced opsin expression, and to remain viable in the absence of an outer segment.
机译:像大多数哺乳动物(包括人类)一样,小鼠视锥细胞感光细胞表达的视锥蛋白来自两个古老的家族:S-视蛋白(基因Opn1sw)和M-视蛋白(基因Opn1mw)。大多数C57Bl / 6小鼠视锥细胞共表达两种视蛋白,但在背腹反梯度中共表达,其中M-视蛋白在背侧视网膜占主导地位,S-视蛋白在腹侧视网膜中占主导地位,S-视蛋白的整体表达高4倍。我们通过在Opn1sw基因(Opn1sw(Neo / Neo))的第三个和第四个外显子之间插入新霉素选择盒来创建缺少S-视蛋白表达的小鼠。与已发表的表征缺乏视紫红质(Rho /)的小鼠的视网膜杆细胞死亡2.5个月的结果形成鲜明对比,Opn1sw(Neo / Neo)小鼠的视锥细胞至少在1.5年内仍然可以存活,即使许多腹视锥细胞没有如高分辨率的免疫组织化学和电子显微镜所揭示的,其形成外部区段。吸移管记录显示,Opn1sw(Neo / Neo)小鼠的功能性腹侧锥体不仅能以正常的动力学方式光转换光,而且对中波长光也比野生型同行更敏感。定量蛋白质印迹分析揭示了增加的M-视蛋白表达的敏感性的基础。因为S-和M-视蛋白转录物必须在共同表达的视锥细胞中竞争相同的翻译机制,所以消除腹侧Opn1sw(Neo / Neo)视锥细胞中S-视蛋白mRNA可能通过减轻翻译竞争而增加M-视蛋白表达机械,揭示了消除显性成绩单的重要结果。总的来说,我们的研究结果显示了视锥细胞感光蛋白具有惊人的功能,视蛋白表达大大降低,并且在没有外部片段的情况下仍保持活力。

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